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Crystal Alignment of Sn-Pb Alloy by a Simultaneous Imposition of a DC Current and a Static Magnetic Field during Solidification

机译:凝固过程中直流电流和静磁场的同时施加使Sn-Pb合金的晶体取向

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摘要

A new crystal-alignment process in which both a static magnetic field and a direct electric current are imposed on an alloy during solidification was proposed and tested experimentally on Sn-10mass%Pb alloy. Various intensities of a static magnetic field and a direct current were imposed on the sample during solidification. After solidification, cross-sections of the samples were polished and the crystal alignment was evaluated by means of X-ray diffraction (XRD). As predicted theoretically, the peaks corresponding to the (200) and (220) planes were intensified in the XRD analysis when a static magnetic field larger of 3 T or more was imposed, whereas no crystal alignment was observed with a 0.1 T magnetic field. Therefore, crystal alignment was achieved by this process, and the critical intensity for crystal alignment is between 0.1 T and 3 T under the experimental conditions studied.
机译:提出了一种新的晶体取向过程,其中在凝固过程中在合金上施加了静磁场和直流电流,并在Sn-10mass%Pb合金上进行了实验测试。在固化过程中,样品上会施加各种强度的静磁场和直流电。固化后,将样品的横截面抛光,并通过X射线衍射(XRD)评估晶体取向。如理论上所预测,当施加3 T或更大的静态磁场时,在XRD分析中会增强与(200)和(220)平面相对应的峰,而在0.1 T磁场下未观察到晶体取向。因此,通过该过程实现了晶体取向,并且在所研究的实验条件下,晶体取向的临界强度在0.1T至3T之间。

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